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High Capacity 106Ah Battery Cell with 2.0V-3.65V Operating Voltage and 4000 Cycles Life
The 3.2V 106Ah LiFePO4 Cell: An Efficient and Reliable Power Source
The LiFePO4 cell is a type of lithium iron phosphate battery that operates at a voltage of 3.2 volts and has a capacity of 106 ampere-hours (Ah). It is well known for its high energy density, long cycle life, and improved safety compared to other lithium-ion battery chemistries.
This particular battery cell is popular for applications such as electric vehicles, renewable energy storage systems, and portable electronics due to its high capacity and the ability to provide long-lasting power. The LiFePO4 chemistry offers stability and low risk of thermal runaway as well as resistance to overcharging and overheating.
In addition to the above benefits, these cells also have a longer lifespan, due to less degradation. They can also operate over a wide temperature range, making them suitable for use in hot and cold climates.
The 3.2V 106Ah LiFePO4 cell is a durable and powerful energy source that offers many advantages. It is suitable for a wide range of applications that require long-lasting power, enhanced safety, and improved reliability.
The capacity of this product is 106 Ah, with energy output of "≥341.3 Wh (1/3C) and ≥332.8Wh (1.0C)" and specific energy of "≥176.8Wh/Kg (1/3C) and 172.4 Wh/Kg (1.0C)". Its voltage range is 2.0 to 3.65 V. In addition, its ACR (1KHz) is 0.2 to 0.4 mΩ, and the mean of ACR (1KHz) is 0.25+0.05 mΩ.
The outgoing voltage is 3.2V, with the outgoing capacity of over 106 Ah. The operating temperature is -20°C to 55°C for charge and -30°C to 60°C for discharge. It has a life cycle of 4000 (80% SOH), and the discharge power is ≥1350W.
The cell has a weight of 1.93KG and a dimension of 1173*1483*523mm.
The 3.2V 106Ah LiFePO4 cell is a versatile battery cell that finds applications in many fields, due to its beneficial characteristics. It can be used to power electric vehicles, renewable energy storage systems, portable electronics, uninterruptible power supplies, marine/RV power systems, and off-grid power solutions.
Electric vehicles (EVs) benefit from the LiFePO4 cell's high capacity and stability, as this enables long-range capabilities and sustainable transportation. Renewable energy storage systems such as solar or wind power installations are also powered by this cell, as it can store large amounts of energy and is able to capture and use excess energy during peak production for later use.
In addition to electric vehicles and renewable energy storage systems, LiFePO4 cells are used in portable electronics devices, such as laptops, tablets, smartphones, and portable power banks, due to their high energy density and longer runtime. This battery cell is also employed in Uninterruptible Power Supplies (UPS) systems, as it offers reliability and durability which is essential in safeguarding critical equipment and systems in industries such as data centers and healthcare facilities.
Finally, LiFePO4 cells are frequently utilized in marine and recreational vehicle (RV) power systems, since they can handle extreme temperatures and provide efficient energy storage and prolonged usage on boats, yachts, and RVs. They are also found in off-grid power solutions, providing reliable and sustainable energy sources for remote communication stations, military operations, and rural electrification projects.
In conclusion, the 3.2V 106Ah LiFePO4 cell is used to enable efficient and dependable power solutions across various industries.
We provide technical support and services for Lithium Ion Battery Cells at every stage of the product lifecycle. Our team of experts can help you with the following:
If you need help with Lithium Ion Battery Cells, please contact our team at support@example.com.
The Lithium Ion Battery Cells must be packed and shipped according to the manufacturer’s instructions. The cells should be carefully packed and placed in a box with sufficient cushioning material to prevent damage. The box must be labeled with the words “Lithium Ion Battery Cells” and the appropriate shipping label.
The battery cells must be shipped using a ground transportation service. The cells must be shipped in a manner that prevents them from being exposed to extreme temperatures, vibration, shock, or other hazards. The cells must be placed in a padded box with sufficient cushioning material.
The shipping label must include the words “Lithium Ion Battery Cells” and the appropriate shipping address. It is important to note that the cells must not be shipped via air or sea, as this can damage the cells.